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实时可变形性细胞术作为细胞功能的无标记指标。

Real-time deformability cytometry as a label-free indicator of cell function.

作者信息

Otto O, Rosendahl P, Golfier S, Mietke A, Herbig M, Jacobi A, Topfner N, Herold C, Klaue D, Girardo S, Winzi M, Fischer-Friedrich E, Guck J

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:1861-4. doi: 10.1109/EMBC.2015.7318744.

Abstract

The mechanical properties of cells are known to be a label-free, inherent marker of biological function in health and disease. Wide-spread utilization has so far been impeded by the lack of a convenient measurement technique with sufficient throughput. To address this unmet need, we have recently introduced real-time deformability cytometry (RT-DC) for continuous mechanical single-cell classification of heterogeneous cell populations at rates of several hundred cells per second. Cells are driven through the constriction zone of a microfluidic chip leading to cell deformations due to hydrodynamic stresses only. Our custom-built image processing software performs image acquisition, image analysis and data storage on the fly. The ensuing deformations can be quantified and an analytical model enables the derivation of cell material properties. Performing RT-DC we highlight its potential to identify rare objects in heterogeneous suspensions and to track drug-induced changes in cells. In summary, RT-DC enables marker-free, quantitative phenotyping of heterogeneous cell populations with a throughput comparable to standard flow cytometry.

摘要

细胞的力学特性是健康和疾病中生物功能的一种无标记固有标志物。到目前为止,由于缺乏一种具有足够通量的便捷测量技术,其广泛应用受到了阻碍。为满足这一未被满足的需求,我们最近推出了实时变形性细胞术(RT-DC),用于以每秒数百个细胞的速度对异质细胞群体进行连续的机械单细胞分类。细胞仅在流体动力应力作用下通过微流控芯片的收缩区,从而导致细胞变形。我们定制的图像处理软件可实时进行图像采集、图像分析和数据存储。由此产生的变形可以被量化,并且一个分析模型能够推导细胞材料特性。通过执行RT-DC,我们突出了其在识别异质悬浮液中稀有物体以及追踪药物诱导的细胞变化方面的潜力。总之,RT-DC能够对异质细胞群体进行无标记的定量表型分析,其通量与标准流式细胞术相当。

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